a. Hydrogen is burned with air at an equivalence ratio of 1.2. If there is ideal,...
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a. Hydrogen is burned with air at an equivalence ratio of 1.2. If there is ideal, complete combustion, the chemical reaction will look like H + a(0 +3.76N) bHO + CO + dN For the equivalence ratio of 1.2, what is the coefficient a in the reaction above? In reality, it is possible for some water to disassociate into hydrogen (H) and oxygen (O). This would lead to a combustion reaction with the following form: H + a(0 +3.76N) bHO + CO + dN + H Assuming the coefficient a has the same value as you found in the first part of the problem, develop a set of equations to solve for the coefficients b, c, d and e at equilibrium. The final temperature is 1700K and the final pressure is 300atm. The following equilibrium condition may be used: 1 HO H + O a. Hydrogen is burned with air at an equivalence ratio of 1.2. If there is ideal, complete combustion, the chemical reaction will look like H + a(0 +3.76N) bHO + CO + dN For the equivalence ratio of 1.2, what is the coefficient a in the reaction above? In reality, it is possible for some water to disassociate into hydrogen (H) and oxygen (O). This would lead to a combustion reaction with the following form: H + a(0 +3.76N) bHO + CO + dN + H Assuming the coefficient a has the same value as you found in the first part of the problem, develop a set of equations to solve for the coefficients b, c, d and e at equilibrium. The final temperature is 1700K and the final pressure is 300atm. The following equilibrium condition may be used: 1 HO H + O
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Thermodynamics An Interactive Approach
ISBN: 978-0130351173
1st edition
Authors: Subrata Bhattacharjee
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